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Recent Trends in Computational Photonics: Springer Series in Optical Sciences, cartea 204

Editat de Arti Agrawal, Trevor Benson, Richard M. De La Rue, Gregory A. Wurtz
en Limba Engleză Hardback – 10 noi 2017
This book brings together the recent cutting-edge work on computational methods in photonics and their applications. The latest advances in techniques such as the Discontinuous Galerkin Time Domain method, Finite Element Time Domain method, Finite Difference Time Domain method as well as their applications are presented. Key aspects such as modelling of non-linear effects (Second Harmonic Generation, lasing in fibers, including gain nonlinearity in metamaterials), the acousto-optic effect, and the hydrodynamic model to explain electron response in nanoplasmonic structures are included. The application areas covered include plasmonics, metamaterials, photonic crystals, dielectric waveguides, fiber lasers. The chapters give a representative survey of the corresponding area. 
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Specificații

ISBN-13: 9783319554372
ISBN-10: 3319554379
Pagini: 416
Ilustrații: XIX, 395 p. 170 illus., 134 illus. in color.
Dimensiuni: 160 x 241 x 28 mm
Greutate: 0.79 kg
Ediția:1st edition 2017
Editura: Springer
Colecția Springer Series in Optical Sciences
Seria Springer Series in Optical Sciences

Locul publicării:Cham, Switzerland

Cuprins

Introduction to Mid Infrared Fibre Lasers.- Laser Rate and Propagation Equations.- Obtaining Spectroscopic Parameters as Inputs to the Numerical Model.- Models for Fibre Lasers.- Hydrodynamic Model for Nonlinear Plasmonics.- Discussion and Conclusions.

Textul de pe ultima copertă

This book brings together the recent cutting-edge work on computational methods in photonics and their applications. The latest advances in techniques such as the Discontinuous Galerkin Time Domain method, Finite Element Time Domain method, Finite Difference Time Domain method as well as their applications are presented. Key aspects such as modelling of non-linear effects (Second Harmonic Generation, lasing in fibers, including gain nonlinearity in metamaterials), the acousto-optic effect, and the hydrodynamic model to explain electron response in nanoplasmonic structures are included. The application areas covered include plasmonics, metamaterials, photonic crystals, dielectric waveguides, fiber lasers. The chapters give a representative survey of the corresponding area. 


Caracteristici

Edited and written by experts in the field Presents applications to popular areas such as metamaterials, photonic crystals Explains how to model physical effects such as non-linearity and the acousto-optic effect Includes supplementary material: sn.pub/extras